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1
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0344069784
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Laminar ceramics that exhibit a threshold strength
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M. P. Rao, A. J. Sánchez-Herencia, G. E. Beltz, R. M. McMeeking, and F. F. Lange, "Laminar Ceramics That Exhibit a Threshold Strength," Science, 286, 102-5 (1999).
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(1999)
Science
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Rao, M.P.1
Sánchez-Herencia, A.J.2
Beltz, G.E.3
McMeeking, R.M.4
Lange, F.F.5
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2
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0033344056
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Optimal threshold strength of laminar ceramics
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R. M. McMeeking and K. Hbaieb, "Optimal Threshold Strength of Laminar Ceramics," Z. Metallkd., 90 [12] 1031-6 (1999).
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Z. Metallkd.
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, pp. 1031-1036
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McMeeking, R.M.1
Hbaieb, K.2
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3
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0036967143
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Laminar ceramics utilizing the zirconia tetragonal-to-monoclinio phase transformation to obtain a threshold strength
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M. G. Pontin, M. P. Rao, A. J. Sánchez-Herencia, and F. F. Lange, "Laminar Ceramics Utilizing the Zirconia Tetragonal-to-Monoclinio Phase Transformation to Obtain a Threshold Strength," J. Am. Ceram. Soc., 85 [12] 3041-8 (2002).
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J. Am. Ceram. Soc.
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, Issue.12
, pp. 3041-3048
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Pontin, M.G.1
Rao, M.P.2
Sánchez-Herencia, A.J.3
Lange, F.F.4
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4
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27644497539
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Effects of porosity on the threshold strength of laminar ceramics
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in press
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M. G. Pontin and F. F. Lange, "Effects of Porosity on the Threshold Strength of Laminar Ceramics," J. Am. Ceram. Soc., in press.
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J. Am. Ceram. Soc.
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Pontin, M.G.1
Lange, F.F.2
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5
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0036573276
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Factors affecting threshold strength in laminar ceramics containing thin compressive layers
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M. P. Rao and F. F. Lange, "Factors Affecting Threshold Strength in Laminar Ceramics Containing Thin Compressive Layers," J. Am. Ceram. Soc., 85 [5] 1222-8 (2002).
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J. Am. Ceram. Soc.
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, Issue.5
, pp. 1222-1228
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Rao, M.P.1
Lange, F.F.2
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6
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0035526628
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Residual stress induced r-curves in laminar ceramics that exhibit a threshold strength
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M. P. Rao, J. Rödel, and F. F. Lange, "Residual Stress Induced R-Curves in Laminar Ceramics That Exhibit a Threshold Strength," J. Am. Ceram. Soc., 84 [11] 2722-4 (2001).
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J. Am. Ceram. Soc.
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, Issue.11
, pp. 2722-2724
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Rao, M.P.1
Rödel, J.2
Lange, F.F.3
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7
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0029376584
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Surface cracking in layers under biaxial, residual compressive stress
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S. Ho, C. Hillman, F. F. Lange, and Z. Suo, "Surface Cracking in Layers Under Biaxial, Residual Compressive Stress," J. Am. Ceram. Soc., 78 [9] 2353-9 (1995).
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(1995)
J. Am. Ceram. Soc.
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, Issue.9
, pp. 2353-2359
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Ho, S.1
Hillman, C.2
Lange, F.F.3
Suo, Z.4
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8
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0030195020
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Crack bifurcation in laminar ceramic composites
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M. Oechsner, C. Hillman, and F. F. Lange, "Crack Bifurcation in Laminar Ceramic Composites," J. Am. Ceram. Soc., 79 [7] 1834-8 (1996).
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(1996)
J. Am. Ceram. Soc.
, vol.79
, Issue.7
, pp. 1834-1838
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Oechsner, M.1
Hillman, C.2
Lange, F.F.3
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10
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0036566692
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Crack bifurcation features in laminar specimens with fixed total thickness
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M. Lugovy, N. Orlovskaya, V. Slyunyayev, G. Gogotsi, J. Kübler, and A. J. Sánchez-Herencia, "Crack Bifurcation Features in Laminar Specimens with Fixed Total Thickness," Comput. Sci. Tech., 62, 819-30 (2002).
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Comput. Sci. Tech.
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, pp. 819-830
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Lugovy, M.1
Orlovskaya, N.2
Slyunyayev, V.3
Gogotsi, G.4
Kübler, J.5
Sánchez-Herencia, A.J.6
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12
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0024716116
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Alumina and alumina/zirconia multilayer composites obtained by slip casting
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J. Requena, R. Moreno, and J. S. Moya, "Alumina and Alumina/Zirconia Multilayer Composites Obtained by Slip Casting," J. Am. Ceram. Soc., 72 [8] 1511-3 (1989).
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, pp. 1511-1513
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Requena, J.1
Moreno, R.2
Moya, J.S.3
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